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实时显微镜成像揭示能量代谢缺陷的活细胞中线粒体结构和运动动力学的改变。

Altered mitochondrial structure and motion dynamics in living cells with energy metabolism defects revealed by real time microscope imaging.

作者信息

Pham Nhu-An, Richardson Tim, Cameron Jessie, Chue Bruno, Robinson Brian H

机构信息

Richardson Technologies Inc. at The Hospital for Sick Children, 555 University Avenue, Toronto, Ontario M5G 1X8, Canada.

出版信息

Microsc Microanal. 2004 Apr;10(2):247-60. doi: 10.1017/S143192760404005X.

Abstract

Using the real time microscope (RTM), a system applying new developments in light microscopy, we documented the spatial and temporal dynamics of mitochondrial behavior in human cultured skin fibroblasts. Without the use of stains or probes, we resolved fibroblast mitochondria as dark slender filaments of approximately 0.2 m wide and up to 10 m long, as well as a few smaller ovoid forms. In the living cell, the three most common mitochondrial movements were: (1) small oscillatory movements; (2) larger movements including filament extension, retraction, and branching as well as combinations of these actions; and (3) whole transit movements of single mitochondrial filaments. Skin fibroblasts from patients with mitochondrial complex I deficiency and normal fibroblasts during incubation with rotenone, or antimycin A, contained higher proportions of mitochondria in the swollen filamentous forms, nodal filaments, and ovoid forms rather than the slender filamentous forms in normal cells. Interestingly, decreased motility was observed with the more ovoid mitochondrial forms compared to the filamentous forms. We conclude that mitochondrial morphology and dynamic motion are strongly associated with changes in mitochondrial energy metabolism. Images documenting our observations are presented both at single time points and as QuickTime videos.

摘要

利用实时显微镜(RTM)这一应用了光学显微镜新进展的系统,我们记录了人类培养皮肤成纤维细胞中线粒体行为的时空动态。无需使用染色剂或探针,我们分辨出成纤维细胞线粒体为宽度约0.2微米、长度达10微米的深色细长丝状,以及一些较小的卵形形态。在活细胞中,三种最常见的线粒体运动为:(1)小幅度振荡运动;(2)较大幅度运动,包括细丝伸展、收缩、分支以及这些动作的组合;(3)单个线粒体细丝的整体转运运动。线粒体复合体I缺陷患者的皮肤成纤维细胞以及正常成纤维细胞在与鱼藤酮或抗霉素A孵育时,肿胀丝状、结节状细丝和卵形形态的线粒体比例高于正常细胞中的细长丝状形态。有趣的是,与丝状形态相比,卵形线粒体形态的运动性降低。我们得出结论,线粒体形态和动态运动与线粒体能量代谢变化密切相关。记录我们观察结果的图像以单时间点和QuickTime视频形式呈现。

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